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Experimental Measurements of Critical Heat Flux in Expanding MicroChannel Arrays

机译:扩展微通道阵列中临界热通量的实验测量

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The effect of an expanding microchannel cross-section on flow boiling critical heat flux (CHF) is experimentally investigated across four rates of expansion. A pumped-loop apparatus is developed to boil R-134a in an array of microchannels cut into copper; a test section is designed to facilitate interchange of the microchannel specimens, allowing consistency across experiments. An optimum expansion angle allowing maximum heat flux is observed, the location of which increases with the mass flow rate. The boiling number does not indicate any optimum in the range observed, showing a nearly monotonic increase with expansion angle. The familiar increase in critical heat flux with mass flux is observed, though expansion shifts the CHF-mass flux curves in a favorable direction. The existence of an optimum expansion angle confirms an earlier qualitative hypothesis by the authors and suggests that microchannel heat sinks offer opportunities for methodical improvement of flow boiling stability and performance.
机译:通过四种膨胀率实验研究了膨胀微通道横截面对流动沸腾临界热通量(CHF)的影响。开发了一种抽水循环设备,将R-134a烧成一排切成铜的微通道。测试部分的设计旨在促进微通道标本的互换,从而在整个实验过程中保持一致性。观察到允许最大热通量的最佳膨胀角,其位置随质量流量增加。沸腾数在观察到的范围内没有任何最佳值,显示出随着膨胀角几乎单调增加。观察到临界热通量随质量通量的增加,尽管膨胀使CHF-质量通量曲线向有利方向移动。最佳膨胀角的存在证实了作者的较早的定性假设,并表明微通道散热器为系统地改善流动沸腾稳定性和性能提供了机会。

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